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CRE recombinase-based positive-negative selection systems for genetic manipulation in Trypanosoma brucei.

机译:基于CRE重组酶的正负选择系统,用于布鲁氏锥虫的基因操作。

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The limited repertoire of drug-resistance markers imposes a serious obstacle to genetic manipulation of Trypanosoma brucei. Here we describe experiments with a fusion protein that allows positive selection for genome integration followed by CRE recombinase-mediated excision of the marker cassette that can be selected by ganciclovir, although the excision event is so efficient that selection is not strictly necessary. We describe two variants of the tetracycline-inducible pLEW100-based CRE-expression vector that reduced its toxicity when stably integrated into the genome, and we demonstrate that transient transfection of circular pLEW100-CRE is highly efficient at catalyzing marker excision. We used this approach to delete the last two enzymes of the pyrimidine synthesis pathway, creating a cell line that is resistant to fluoroorotic acid, which would allow the same enzymes (PYR6-5) to be used as an alternative negative selectable marker.
机译:耐药标记物的种类有限,对布鲁氏锥虫的遗传操作构成了严重的障碍。在这里,我们描述了一种融合蛋白的实验,该蛋白允许对基因组整合进行正向选择,然后由更昔洛韦进行选择的CRE重组酶介导的标记盒切除,尽管切除事件非常有效,以至于选择并非严格必要。我们描述了基于四环素可诱导的基于pLEW100的CRE表达载体的两个变体,它们在稳定整合到基因组中时降低了其毒性,并且我们证明了环状pLEW100-CRE的瞬时转染在催化标记切除方面非常高效。我们使用这种方法删除了嘧啶合成途径中的最后两种酶,从而创建了一种对氟乳清酸具有抗性的细胞系,这使得相同的酶(PYR6-5)可以用作替代的阴性选择标记。

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